散射
非相干散射
光学
物理
扩散
高斯分布
成像体模
相干后向散射
菲克扩散定律
常量(计算机编程)
超声波传感器
基质(化学分析)
计算物理学
材料科学
声学
计算机科学
热力学
复合材料
量子力学
程序设计语言
作者
Alexandre Aubry,Arnaud Derode
出处
期刊:Physical Review E
[American Physical Society]
日期:2007-02-06
卷期号:75 (2): 026602-026602
被引量:39
标识
DOI:10.1103/physreve.75.026602
摘要
As classical imaging fails with diffusive media, one way to image a multiple-scattering medium is to achieve local measurements of the dynamic transport properties of a wave undergoing diffusion. This paper presents a method to obtain local measurements of the diffusion constant D in a multiple-scattering medium. The experimental setup consists in an array of programmable transducers placed in front of the multiple-scattering medium to be imaged. By achieving Gaussian beamforming both at emission and reception, an array of virtual sources and receivers located in the near field is constructed. The time evolution of the incoherent component of the intensity backscattered on this virtual array is shown to represent directly the growth of the diffusive halo as sqrt[Dt]. A matrix treatment is proposed to separate the incoherent intensity from the coherent backscattering peak. Once the incoherent contribution is isolated, a local measurement of the diffusion constant is possible. The technique is applied to image the long-scale variations of D in a random-scattering sample made of two parts with a different concentration of cylindrical scatterers. This experimental result is obtained with ultrasonic waves around 3 MHz. It illustrates the possibility of imaging diffusive media from local measurements of the diffusion constant, based on coherent Gaussian beamforming and a matrix "antisymmetrization," which creates a virtual antireciprocity.
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